Laboratorio de Biología Periodontal, Facultad de Odontología, Universidad Nacional Autónoma de México (UNAM), Mexico City, Mexico.
Instituto de Física, Universidad Nacional Autónoma de México (UNAM), Mexico City, Mexico; and.
FASEB J. 2019 Jan;33(1):1167-1178. doi: 10.1096/fj.201800434RR. Epub 2018 Aug 16.
The use of recombinant proteins has revolutionized the development of biologic pharmaceuticals; however, they are not free of complications. Some have very high molecular weight, some demonstrate in vivo instability, and the high cost of producing them remains a major problem. On the other hand, it has been shown that peptides derived from active domains keep their biologic activity and can trigger events, such as osteogenesis and bone regeneration. Small peptides are advantageous because of their ease of synthesis and handling and their low immunogenic activity. The purpose of this study was to investigate the functions of a synthetic peptide, cementum protein 1-peptide1 (CEMP-1-p1), both in vitro and in vivo. Our results show that CEMP-1-p1 significantly enhanced the proliferation and differentiation of human periodontal ligament cells toward a mineralizing-like phenotype, as evidenced by increasing alkaline phosphatase (ALP)-specific activity and osterix, runt-related transcription factor (RUNX)-2, integrin binding sialoprotein, bone morphogenetic protein-2, osteocalcin, and cementum protein (CEMP)-1 expression at mRNA and protein levels. In vivo assays performed through standardized critical-size calvarial defects in rats treated with CEMP-1-p1 resulted in newly formed bone after 30 and 60 d. These data demonstrate that CEMP-1-p1 is an effective bioactive peptide for bone tissue regeneration. The application of this bioactive peptide may lead to implementing new strategies for the regeneration of bone and other mineralized tissues.-Correa, R., Arenas, J., Montoya, G., Hoz, L., López, S., Salgado, F., Arroyo, R., Salmeron, N., Romo, E., Zeichner-David, M., Arzate, H. Synthetic cementum protein 1-derived peptide regulates mineralization in vitro and promotes bone regeneration in vivo.
重组蛋白的使用彻底改变了生物制药的发展;然而,它们并非没有并发症。有些具有非常高的分子量,有些在体内不稳定,而且生产成本仍然是一个主要问题。另一方面,已经表明,来源于活性结构域的肽保持其生物学活性,并可以引发成骨和骨再生等事件。小肽具有易于合成和处理以及低免疫原性活性的优点。本研究旨在研究合成肽,牙骨质蛋白 1-肽 1(CEMP-1-p1)的功能,无论是在体外还是在体内。我们的结果表明,CEMP-1-p1 显著增强了人牙周膜细胞向矿化样表型的增殖和分化,表现为碱性磷酸酶(ALP)特异性活性和骨形态发生蛋白-2、骨钙素和牙骨质蛋白(CEMP)-1 的表达增加。在大鼠标准临界颅骨缺损的体内试验中,用 CEMP-1-p1 处理后 30 和 60 天形成新骨。这些数据表明 CEMP-1-p1 是一种有效的骨组织再生生物活性肽。该生物活性肽的应用可能会为骨和其他矿化组织的再生带来新的策略。-Correa,R.,Arenas,J.,Montoya,G.,Hoz,L.,López,S.,Salgado,F.,Arroyo,R.,Salmeron,N.,Romo,E.,Zeichner-David,M.,Arzate,H. 合成牙骨质蛋白 1 衍生肽调节体外矿化并促进体内骨再生。